Vibration isolation pipes for integrated bathrooms and integrated bathrooms using these vibration isolation pipes

CN224635131UActive Publication Date: 2026-08-14KAILE SANITARY WARE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-25
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0004]本实用新型主要目的,在于解决现行整体卫浴中独立设置的通气管所衍生的问题

Benefits of technology

[0011]通过本实用新型前述技术实施,相较于习用技术具有以下特点:本实用新型该隔震管将该通气歧管一体成形于该隔震主管上,该通气歧管连通该排污通道并与该隔震主管形成三通管结构。以本实用新型实施的该整体卫浴,无须独立设置排气管,而是可以通过该隔震管的设置,直接令该通气歧管提供通气效果,有效减少现行整体卫浴中独立设置的通气管挤压整体卫浴其他管路在配管空间的走线。

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Abstract

This utility model discloses a vibration isolation pipe for an integrated bathroom and an integrated bathroom using the vibration isolation pipe. The vibration isolation pipe of the integrated bathroom includes a main vibration isolation pipe and a ventilation manifold. The main vibration isolation pipe is a flexible, soft pipe that forms a sewage discharge channel. The ventilation manifold is integrally formed on the main vibration isolation pipe, and the ventilation manifold connects to the sewage discharge channel and forms a three-way pipe structure with the main vibration isolation pipe.
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Description

Technical Field

[0001] This utility model provides a vibration isolation pipe, particularly a vibration isolation pipe that can be used in integrated bathrooms. Background Technology

[0002] In-floor drainage refers to a method where drainage branch pipes on the same floor do not penetrate the floor slab, and all pipelines are installed within that floor, also known as "piping on slab". Based on the construction method, it can be divided into lowered slab in-floor drainage, wall-mounted in-floor drainage, and raised in-floor drainage. Among them, prefabricated bathrooms fall under the construction scope of raised in-floor drainage.

[0003] Current building codes have clear regulations for vent pipes in bathroom drainage systems to ensure smooth drainage. To comply with these codes, most modern prefabricated bathrooms use independently installed vent pipes. These vent pipes are routed through the piping space between the prefabricated bathroom and the interior building walls. However, given the limited piping space in prefabricated bathrooms, an independently installed vent pipe would occupy some of that space, compressing the routing of the water supply and drainage systems. Utility Model Content

[0004] The main purpose of this utility model is to solve the problems arising from the independently installed vent pipes in current integrated bathrooms.

[0005] To achieve the above objectives, this utility model provides a vibration isolation pipe for an integrated bathroom, comprising a vibration isolation main pipe and a ventilation manifold. The vibration isolation main pipe is a flexible, soft pipe body, which forms a sewage discharge channel. The ventilation manifold is integrally formed on the vibration isolation main pipe, and the ventilation manifold connects to the sewage discharge channel and forms a three-way pipe structure with the vibration isolation main pipe.

[0006] In one embodiment, the isolation tube has one or more ribs formed on the isolation tube.

[0007] In one embodiment, there are multiple ribs, spaced apart from each other.

[0008] In one embodiment, the rib does not completely surround the main seismic isolation tube.

[0009] In one embodiment, the ventilation manifold is formed on the portion of the main vibration isolation pipe that does not have the rib, and corresponds to the rib.

[0010] In addition to the foregoing, this utility model also provides an integrated bathroom, which has a piping space between itself and an interior building wall. The integrated bathroom includes one or more sewage pipes and a vibration isolation pipe. The vibration isolation pipe includes a vibration isolation main pipe and a ventilation manifold. The vibration isolation main pipe is a flexible soft pipe body. The vibration isolation main pipe forms a sewage channel that connects to the sewage pipe. The ventilation manifold is integrally formed on the vibration isolation main pipe. The ventilation manifold connects to the sewage channel and forms a T-junction structure with the vibration isolation main pipe. The ventilation manifold is located in the piping space. The extension line of the ventilation manifold intersects the axis of the vibration isolation main pipe, and the opening of the ventilation manifold is located above the vibration isolation main pipe.

[0011] Compared with conventional technology, the present invention has the following characteristics when implementing the aforementioned technology: The vibration isolation pipe of the present invention integrally forms the ventilation manifold onto the vibration isolation main pipe, and the ventilation manifold connects to the sewage channel and forms a three-way pipe structure with the vibration isolation main pipe. The integrated bathroom implemented with the present invention does not require a separate exhaust pipe; instead, the ventilation manifold can be directly made to provide ventilation through the vibration isolation pipe, effectively reducing the need for separate ventilation pipes in existing integrated bathrooms to compress the wiring of other pipes in the integrated bathroom's piping space. Attached Figure Description

[0012] Figure 1 This is a perspective view of an embodiment of the present utility model.

[0013] Figure 2 This is a cross-sectional schematic diagram of an embodiment of the present invention.

[0014] Figure 3 This is a side view schematic diagram of an embodiment of the present utility model.

[0015] Figure 4 This is a perspective view of another embodiment of the present invention.

[0016] Figure 5 This is a schematic diagram illustrating an embodiment of the present utility model.

[0017] In the attached figures, the following labels are used:

[0018] 20: Seismic isolation tube

[0019] 21: Seismic Isolation Main Module

[0020] 211: Sewage Discharge Channel

[0021] 212: Axis

[0022] 22: Ventilation manifold

[0023] 221: Pipe diameter

[0024] 222: Pipeline extension line

[0025] 223: Assembly port

[0026] 23: Ribs

[0027] 50: Integrated bathroom

[0028] 51: Washbasin

[0029] 52: Falling water head

[0030] 53: Piping space

[0031] 54: Sewage pipe

[0032] 55: Exhaust pipe

[0033] 57: Wall

[0034] 60: Interior architectural walls

[0035] 61: Pipe Room Detailed Implementation

[0036] Unless otherwise expressly stated or intentionally limited in number, the singular forms “a” and “the” used herein include the plural forms. Furthermore, the term “comprising” as used herein indicates the presence of the described features, elements and / or components, but does not preclude the addition or presence of one or more other features, elements, components and / or groups thereof.

[0037] Please see Figures 1 to 5 This utility model provides a vibration isolation pipe 20, which is applicable to the same-floor drainage system of an integrated bathroom 50. The vibration isolation pipe 20 includes a vibration isolation main pipe 21 and a venting manifold 22. The vibration isolation main pipe 21 is a flexible, soft pipe body. The function of the soft pipe body is to absorb the kinetic energy of the shaking caused by an earthquake and ensure the stability of the pipeline. The vibration isolation main pipe 21 forms a sewage discharge channel 211, which receives sewage discharged from the internal equipment of the integrated bathroom 50. The internal equipment includes, for example, a toilet, a washbasin (51), and a drain (52). The venting manifold 22 is integrally formed on the vibration isolation main pipe 21. The venting manifold 22 connects to the sewage discharge channel 211 and forms a three-way pipe structure with the vibration isolation main pipe 21. The venting manifold 22 does not provide drainage function, but provides ventilation function for the internal equipment of the integrated bathroom 50 during drainage and ensures smooth drainage.

[0038] Please refer to the following: Figures 1 to 3 In one embodiment, the vibration isolation tube 20 has one or more ribs 23 formed on the vibration isolation main tube 21. In another embodiment, multiple ribs 23 are provided, spaced apart. On the other hand, by Figure 3Upon observation, the rib 23 does not completely surround the main vibration isolation pipe 21, and the position of the ventilation manifold 22 formed on the main vibration isolation pipe 21 corresponds to the rib 23. In one embodiment, the ventilation manifold 22 is formed on the portion of the main vibration isolation pipe 21 where the rib 23 is not provided, and corresponds to the rib 23.

[0039] Please refer to the following: Figure 1 and Figure 4 In this utility model, the ventilation manifold 22 in the vibration isolation pipe 20 can have its diameter (221) varied as needed, provided it complies with current building codes and regulations. In one embodiment, the diameter (221) of the ventilation manifold 22 is greater than or equal to 2 inches.

[0040] In addition to the foregoing, please refer to Figure 5 This utility model also provides an integrated bathroom 50 implemented in conjunction with the vibration isolation pipe 20. The integrated bathroom 50 has a piping space 53 between itself and an interior building wall 60. The integrated bathroom 50 includes one or more sewage pipes 54 and the vibration isolation pipe 20. The sewage pipe 54 connects to internal equipment of the integrated bathroom 50, such as a toilet, sink (51), and drain (52), and receives wastewater discharged from the internal equipment of the integrated bathroom 50. The vibration isolation pipe 20 is connected to the sewage pipe 54 via the vibration isolation main pipe 21, allowing the sewage discharge channel 211 to connect to the interior of the sewage pipe 54. The ventilation manifold 22 is located within the piping space 53. The extension line (222) of the ventilation manifold 22 intersects the axis (212) of the main vibration isolation pipe 21. The ventilation manifold 22 is not limited to being implemented as a straight pipe as shown in the figure. The ventilation manifold 22 can be shaped into at least one bend as required. However, the position of the opening of the ventilation manifold 22 must meet the condition that when the main vibration isolation pipe 21 is at the bottom, the opening of the ventilation manifold 22 is located above the main vibration isolation pipe 21, so that the ventilation manifold 22 can provide ventilation function for the sewage inside the sewage pipe 54 to flow to the sewage channel 211 and ensure smooth drainage.

[0041] Please see again Figure 5 In one embodiment, the opening of the ventilation manifold 22 not connected to the main vibration isolation pipe 21 is an assembly port 223. The assembly port 223 is connected to an exhaust pipe 55, which is located within the piping space 53 and can extend to a pipe compartment 61 within the interior building wall 60 to discharge gas from the sewage channel 211. In another embodiment, the exhaust pipe 55 can be connected to an extraction device to assist in improving the ventilation function of the vibration isolation pipe 20. In yet another embodiment, the integrated bathroom 50 has a wall 57 and an inspection window. The wall 57 defines the interior space of the integrated bathroom 50, and the inspection window is located on the wall 57. When opened, it connects the interior space of the integrated bathroom 50 with the piping space 53. The inspection window can be located near the extraction device to facilitate subsequent maintenance of the extraction device.

[0042] In summary, the vibration isolation pipe 20 of this utility model integrally forms the ventilation manifold 22 onto the vibration isolation main pipe 21. The integrated bathroom 50 implemented by this utility model does not require a separate exhaust pipe. Instead, the ventilation manifold 22 can be directly provided with ventilation through the vibration isolation pipe 20, which effectively reduces the compression of other pipes in the piping space by the separately installed ventilation pipes in the existing integrated bathroom.

[0043] Of course, there may be other embodiments of this utility model. Without departing from the spirit and essence of this utility model, those skilled in the art can make various corresponding changes and modifications based on this utility model, but these corresponding changes and modifications should all fall within the protection scope of the appended claims of this utility model.

Claims

1. A vibration isolation pipe for a complete bathroom unit, characterized in that, Include: A seismic isolation main pipe, which is a flexible, soft tube forming a sewage channel; and A ventilation manifold is integrally formed on the main vibration isolation pipe. The ventilation manifold connects to the sewage channel and forms a three-way pipe structure with the main vibration isolation pipe.

2. The vibration isolation pipe of the integrated bathroom according to claim 1, characterized in that, The isolation tube has one or more ribs formed on the isolation tube.

3. The vibration isolation pipe of the integrated bathroom according to claim 2, characterized in that, This rib can be set in multiple ways, with multiple ribs set at intervals.

4. The vibration isolation pipe of the integrated bathroom according to any one of claims 2 to 3, characterized in that, The rib does not completely surround the seismic isolation main tube.

5. The vibration isolation pipe of the integrated bathroom according to claim 4, characterized in that, The ventilation manifold is formed on the portion of the main vibration isolation pipe that does not have the rib, and corresponds to the rib.

6. A prefabricated bathroom unit, comprising a piping space between the prefabricated bathroom unit and an interior building wall, characterized in that it includes: More than one sewage pipe; and A vibration isolation pipe includes a vibration isolation main pipe and a ventilation manifold. The vibration isolation main pipe is a flexible, soft pipe body. The vibration isolation main pipe forms a sewage channel that connects to the sewage pipe. The ventilation manifold is integrally formed on the vibration isolation main pipe. The ventilation manifold connects to the sewage channel and forms a T-junction structure with the vibration isolation main pipe. The ventilation manifold is located in the piping space. The extension line of the ventilation manifold intersects the axis of the vibration isolation main pipe, and the opening of the ventilation manifold is located above the vibration isolation main pipe.

7. The integrated bathroom according to claim 6, characterized in that, The isolation tube has one or more ribs formed on the isolation tube.

8. The integrated bathroom according to claim 7, characterized in that, This rib can be set in multiple ways, with multiple ribs set at intervals.

9. The integrated bathroom according to any one of claims 7 to 8, characterized in that, The rib does not completely surround the seismic isolation main tube.

10. The integrated bathroom according to claim 9, characterized in that, The ventilation manifold is formed on the portion of the main vibration isolation pipe that does not have the rib, and corresponds to the rib.